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Featured researches published by Chengjun Wu.


Genomics | 2018

RNA sequencing analysis of salt tolerance in soybean (Glycine max)

Ailan Zeng; Pengyin Chen; Kenneth L. Korth; Jieqing Ping; Julie Thomas; Chengjun Wu; Subodh Srivastava; Andy Pereira; Floyd Hancock; Kristofor R. Brye; Jianxin Ma

Salt stress causes foliar chlorosis and scorch, plant stunting, and eventually yield reduction in soybean. There are differential responses, namely tolerance (excluder) and intolerance (includer), among soybean germplasm. However, the genetic and physiological mechanisms for salt tolerance is complex and not clear yet. Based on the results from the screening of the RA-452 x Osage mapping population, two F4:6 lines with extreme responses, most tolerant and most sensitive, were selected for a time-course gene expression study in which the 250 mM NaCl treatment was initially imposed at the V1 stage and continued for 24 h (hrs). Total RNA was isolated from the leaves harvested at 0, 6, 12, 24 h after the initiation of salt treatment, respectively. The RNA-Seq analysis was conducted to compare the salt tolerant genotype with salt sensitive genotype at each time point using RNA-Seq pipeline method. A total of 2374, 998, 1746, and 630 differentially expressed genes (DEGs) between salt-tolerant line and salt-sensitive line, were found at 0, 6, 12, and 24 h, respectively. The expression patterns of 154 common DEGs among all the time points were investigated, of which, six common DEGs were upregulated and seven common DEGs were downregulated in salt-tolerant line. Moreover, 13 common DEGs were dramatically expressed at all the time points. Based on Log2 (fold change) of expression level of salt-tolerant line to salt-sensitive line and gene annotation, Glyma.02G228100, Glyma.03G226000, Glyma.03G031000, Glyma.03G031400, Glyma.04G180300, Glyma.04G180400, Glyma.05 g204600, Glyma.08G189600, Glyma.13G042200, and Glyma.17G173200, were considered to be the key potential genes involving in the salt-tolerance mechanism in the soybean salt-tolerant line.


Molecular Breeding | 2015

Identification and mapping of stable QTL for protein content in soybean seeds

J. Wang; Pengyin Chen; Dechun Wang; Grover Shannon; Ailan Zeng; Moldir Orazaly; Chengjun Wu


Molecular Breeding | 2017

Genome-wide association study (GWAS) of salt tolerance in worldwide soybean germplasm lines

Ailan Zeng; Pengyin Chen; Kenneth L. Korth; Floyd Hancock; Andy Pereira; Kristofor R. Brye; Chengjun Wu; Ainong Shi


Plant Cell and Environment | 2018

A major natural genetic variation associated with root system architecture and plasticity improves waterlogging tolerance and yield in soybean: Waterlogging tolerance and root system plasticity in soybean

Heng Ye; Li Song; Huatao Chen; Babu Valliyodan; Peng Cheng; Liakat Ali; Tri D. Vuong; Chengjun Wu; John M. Orlowski; Blair Buckley; Pengyin Chen; J. Grover Shannon; Henry T. Nguyen


American Journal of Plant Sciences | 2017

Effect of Flood Stress on Soybean Seed Germination in the Field

Chengjun Wu; Pengyin Chen; Wade Hummer; Ailan Zeng; Mariola Klepadlo


Plant Breeding | 2017

An effective field screening method for flood tolerance in soybean

Chengjun Wu; Ailan Zeng; Pengyin Chen; Liliana Florez-Palacios; Wade Hummer; Jane Mokua; Mariola Klepadlo; Long Yan; Qibin Ma; Yanbo Cheng


Crop Science | 2017

Two Tightly Linked Genes for Soybean Mosaic Virus Resistance in Soybean

Mariola Klepadlo; Pengyin Chen; Ainong Shi; R. Esten Mason; Kenneth L. Korth; Vibha Srivastava; Chengjun Wu


Crop Science | 2017

Quantitative Trait Loci for Chloride Tolerance in ‘Osage’ Soybean

Ailan Zeng; Laura Lara; Pengyin Chen; Xiaoyan Luan; Floyd Hancock; Kenneth L. Korth; Kristofer Brye; Andy Pereira; Chengjun Wu


Plant Breeding | 2017

Evaluation and development of flood-tolerant soybean cultivars

Chengjun Wu; Ailan Zeng; Pengyin Chen; Wade Hummer; Jane Mokua; J. Grover Shannon; Henry T. Nguyen


Crop Science | 2016

Genetic Analysis of Resistance to Soybean Mosaic Virus in PI 438307 Soybean Accession

Mariola Klepadlo; Pengyin Chen; Chengjun Wu

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Ailan Zeng

University of Arkansas

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Wade Hummer

University of Arkansas

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